Inventor
Matthias John
Inventor
Nürnberg, DE
Overview
Patents· 41 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
G06Tprimary
G06TImage data processing or generation, in general33%
A61BDiagnosis28%
G06KGraphical data reading10%
G06VImage or video recognition or understanding9%
G06FElectric digital data processing8%
G02BOptical elements, systems or apparatus3%
G16HHealthcare informatics, i.e. information and communication technology [ict] specially adapted for the handling or processing of medical or healthcare data2%
A61FFilters implantable into blood vessels1%
G01JMeasurement of intensity, velocity, spectral content, polarisation, phase or pulse characteristics of infrared, visible or ultraviolet light1%
G01RMeasuring electric variables1%
PatentTitleYear
10,610,181Robust calcification tracking in fluoroscopic imaging202010,390,780Method and X-ray device for temporal up-to-date representation of a moving section of a body, computer program product and data carrier20199,999,399Method and system for pigtail catheter motion prediction20189,824,302'Method and system for model-based fusion of multi-modal volumetric images'20179,715,637'Method and system for automatic aorta segmentation'20179,687,204'Method and system for registration of ultrasound and physiological models to X-ray fluoroscopic images'20179,681,856'Image fusion for interventional guidance'20179,582,934'Method and system for efficient extraction of a silhouette of a 3D mesh'20179,424,648'Method and system for device detection in 2D medical images'20169,384,546'Method and system for pericardium based model fusion of pre-operative and intra-operative image data for cardiac interventions'20169,384,413'Method and device for automatic or semi-automatic segmentation of a 3D image data set'20169,292,917'Method and system for model-based fusion of computed tomography and non-contrasted C-arm computed tomography'20169,247,880'Image fusion for interventional guidance'20169,189,851'Method of motion compensation for trans-catheter aortic valve implantation'20159,155,470'Method and system for model based fusion on pre-operative computed tomography and intra-operative fluoroscopy using transesophageal echocardiography'20159,058,664'2D-2D fusion for interventional guidance in trans-catheter aortic valve implantation'20159,036,880'High-resolution three-dimensional medical imaging with dynamic real-time information'20159,020,227'Automatic interatrial septum detection from pre-operative and intra-operative 3D medical images for accurate transseptal puncture'20159,014,423'Method and system for catheter tracking in fluoroscopic images using adaptive discriminant learning and measurement fusion'20159,002,078'Method and system for shape-constrained aortic valve landmark detection'20158,724,874'Fusion of 3D volumes with CT reconstruction'20148,724,881'Method and system for precise segmentation of the left atrium in C-arm computed tomography volumes'20148,712,177'Motion compensated overlay'20148,655,041'Automatic detection of contrast injection'20148,644,576'Method and system for multi-part left atrium segmentation in C-arm computed tomography volumes using shape constraints'20148,494,245'System and method for guiding transcatheter aortic valve implantations based on interventional C-Arm CT imaging'20138,364,239'Method for providing information of a locally resolved reconstruction quality of a target volume in a three-dimensional reconstruction volume presentation'20138,315,452'Method and device for obtaining a volume data set of a mobile tissue or organ of a patient'20128,253,093'Optoelectronic detector assembly and method of operating same'20128,232,922'Ultra wide band antenna with a spline curve radiating element'20128,177,835'Method of imaging for heart valve implant procedure'20128,165,839'Calibration of an instrument location facility with an imaging apparatus'20128,099,155'Method for assisting with percutaneous interventions'20128,077,940'Method for reconstructing a three-dimensional target volume in realtime and displaying it'20118,045,780'Device for merging a 2D radioscopy image with an image from a 3D image data record'20118,005,283'Method and device for the combined representation of 2D fluoroscopic images and a static 3D image data set'20117,939,093'Method and apparatus for representing myocardial tissues in different states of damage'20117,924,280'Method and apparatus for processing of diagnostic image data'20117,889,227'Intuitive user interface for endoscopic view visualization'20117,102,816'Arrangement for the manual adjustment of a focus position on microscopes'20066,204,965'Microscope with table device'2001Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
2001–2012Based in Kleinpuerschuetz, DE· patent location history
2011–2017Patents assigned to SIEMENS AG (30)· patent assignee history
2011–2019Patents assigned to JOHN MATTHIAS (27)· patent assignee history
2011–2018Based in Nürnberg, DE· patent location history
2012–2018Patents assigned to BOESE JAN (15)· patent assignee history
2012–2017Based in Nuremberg, DE· patent location history
2012Based in Leipzig, DE· patent location history
2013–2018Patents assigned to ZHENG YEFENG (11)· patent assignee history
2014–2018Patents assigned to COMANICIU DORIN (10)· patent assignee history
2019–2020Based in Nurnberg, DE· patent location history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| SIEMENS AG | 30 | 2011–2017 |
| JOHN MATTHIASself | 27 | 2011–2019 |
| BOESE JAN | 15 | 2012–2018 |
| ZHENG YEFENG | 11 | 2013–2018 |
| COMANICIU DORIN | 10 | 2014–2018 |
Locations
| Location | Patents | Span |
|---|---|---|
| Nürnberg, DE | 26 | 2011–2018 |
| Nuremberg, DE | 9 | 2012–2017 |
| Kleinpuerschuetz, DE | 3 | 2001–2012 |
| Nurnberg, DE | 2 | 2019–2020 |
| Leipzig, DE | 1 | 2012 |